HERRERA ROBLES, JOEL OBED
FÍSICA · Nivel C
Desde 2021 es Professor by subject en Universidad Autónoma de Ciudad Juárez Instituto de Ciencias Biomédicas
I am a materials scientist and Adjunct Professor at the Autonomous University of Ciudad Juárez (UACJ), where I conduct research in electrochemistry, materials science, and advanced characterization of functional materials. My work combines electrochemical methods, multiscale materials characterization, and data-driven...
I am a materials scientist and Adjunct Professor at the Autonomous University of Ciudad Juárez (UACJ), where I conduct research in electrochemistry, materials science, and advanced characterization of functional materials. My work combines electrochemical methods, multiscale materials characterization, and data-driven interpretation to uncover structure–property–performance relationships in materials for energy storage, corrosion, sensing, catalysis, and related electrochemical technologies. I am particularly interested in understanding charge transport, interfacial phenomena, and degradation mechanisms to guide the rational design of high-performance, sustainable materials. Through interdisciplinary and international collaborations, I aim to translate fundamental scientific insights into innovative technologies with societal impact. In addition to my research, I actively contribute to the scientific community through peer review, academic mentoring, and international collaborative research projects focused on advancing electrochemical science and functional materials.
| Nombre | JOEL OBED HERRERA ROBLES |
|---|---|
| Área | FÍSICO-MATEMÁTICAS Y CIENCIAS DE LA TIERRA |
| Campo | FÍSICA |
| Disciplina | QUÍMICA FÍSICA |
| Especialidad | ELECTROQUIMICA |
| CVU | 242002 |
| Institución | |
|---|---|
| Dependencia | INSTITUTO DE INGENIERIA Y TECNOLOGIA |
| Entidad | CHIHUAHUA |
| Nivel | C |
| Vigencia | Inicio: 01/01/2024 |
| Fin: 31/12/2027 |
Últimas publicaciones Scopus
- 2026
- Comparative study of co-precipitation vs. hydrothermal routes for synthesizing LiNi0.5Mn0.3Co0.2O2 (NMC532) cathode material MRS Communications · Vol. 16 Article
- Influence of sintering technique on the dielectric behavior for 0.95(0.8Bi0.5Na0.5TiO3–0.2Bi0.5K0.5TiO3)–0.05(SrTiO3) ceramic powder compacts synthesized by sol–gel MRS Communications · Vol. 16 Article
- 2025
- Effective response of periodic micropolar elastic structures with hollow fibers Mechanics Research Communications · Vol. 148 Article
- Effect of V2O5 coatings on NMC 111 battery cathode materials in aqueous process Materials Chemistry and Physics · Vol. 332 Article
- 2024
- Dye-Sensitized Solar Cells Using Carbon Aerogel with Silver Sulfide Structures as Counter Electrodes Materials Transactions · Vol. 65 Article